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长末端重复序列反转录转座子Tnt1和T135标记揭示了驯化辣椒的遗传多样性和进化关系。

LTR-retrotransposons Tnt1 and T135 markers reveal genetic diversity and evolutionary relationships of domesticated peppers.

作者信息

Tam Sheh May, Lefebvre Véronique, Palloix Alain, Sage-Palloix Anne-Marie, Mhiri Corinne, Grandbastien Marie-Angèle

机构信息

Laboratoire de Biologie Cellulaire, UR501, Institut Jean-Pierre Bourgin, INRA, 78026, Versailles Cedex, France.

出版信息

Theor Appl Genet. 2009 Oct;119(6):973-89. doi: 10.1007/s00122-009-1102-6. Epub 2009 Jul 19.

Abstract

Plant genetic resources often constitute the foundation of successful breeding programs. Pepper (Capsicum annuum L.) is one of the most economically important and diversely utilized Solanaceous crop species worldwide, but less studied compared to tomato and potato. We developed and used molecular markers based on two copia-type retrotransposons, Tnt1 and T135, in a set of Capsicum species and wild relatives from diverse geographical origins. Results showed that Tnt1 and T135 insertion polymorphisms are very useful for studying genetic diversity and relationships within and among pepper species. Clusters of accessions correspond to cultivar types based on fruit shape, pungency, geographic origin and pedigree. Genetic diversity values, normally reflective of past transposition activity and population dynamics, showed positive correlation with the average number of insertions per accession. Similar evolutionary relationships are observed to that inferred by previous karyosystematics studies. These observations support the possibility that retrotransposons have contributed to genome inflation during Capsicum evolution.

摘要

植物遗传资源往往构成成功育种计划的基础。辣椒(Capsicum annuum L.)是全球经济上最重要且用途最为多样的茄科作物之一,但与番茄和马铃薯相比,对其研究较少。我们基于两个反转录转座子Tnt1和T135开发并使用了分子标记,用于一组来自不同地理起源的辣椒属物种及野生近缘种。结果表明,Tnt1和T135插入多态性对于研究辣椒种内和种间的遗传多样性及亲缘关系非常有用。种质聚类与基于果实形状、辣味、地理起源和系谱的品种类型相对应。遗传多样性值通常反映过去的转座活性和种群动态,与每个种质的平均插入数呈正相关。观察到的进化关系与先前核系统学研究所推断的相似。这些观察结果支持反转录转座子在辣椒进化过程中导致基因组膨胀的可能性。

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